Suppr超能文献

频率调制扫描方向检测的最小时间窗口:一项脑磁图研究

A Minimum Temporal Window for Direction Detection of Frequency-Modulated Sweeps: A Magnetoencephalography Study.

作者信息

Kung Shu-Jen, Wu Denise H, Hsu Chun-Hsien, Hsieh I-Hui

机构信息

Institute of Cognitive Neuroscience, National Central University, Taoyuan City, Taiwan.

Institute of Linguistics, Academia Sinica, Taipei, Taiwan.

出版信息

Front Psychol. 2020 Mar 10;11:389. doi: 10.3389/fpsyg.2020.00389. eCollection 2020.

Abstract

The ability to rapidly encode the direction of frequency contour contained in frequency-modulated (FM) sweeps is essential for speech processing, music appreciation, and conspecific communications. Psychophysical evidence points to a common temporal window threshold for human listeners in processing rapid changes in frequency glides. No neural evidence has been provided for the existence of a cortical temporal window threshold underlying the encoding of rapid transitions in frequency glides. The present magnetoencephalography study used the cortical mismatch negativity activity (MMNm) to investigate the minimum temporal window required for detecting different magnitudes of directional changes in frequency-modulated sweeps. A deviant oddball paradigm was used in which directional upward or downward frequency sweep serves as the standard and the same type of sweep with the opposite direction serves as its deviant. Stimuli consisted of unidirectional linear frequency-sweep complexes that swept across speech-relevant frequency bands in durations of 10, 20, 40, 80, 160, and 320 ms (with corresponding rates of 50, 25, 12.5, 6.2, 3.1, 1.5 oct/s). The data revealed significant magnetic mismatch field responses across all sweep durations, with slower-rate sweeps eliciting larger MMNm responses. A greater temporally related enhancement in MMNm response was obtained for rising but not falling frequency sweep contours. A hemispheric asymmetry in the MMNm response pattern was observed corresponding to the directionality of frequency sweeps. Contrary to psychophysical findings, we report a temporal window as short as 10 ms sufficient to elicit a robust MMNm response to a directional change in speech-relevant frequency contours. The results suggest that auditory cortex requires extremely brief temporal window to implicitly differentiate a dynamic change in frequency of linguistically relevant pitch contours. That the brain is extremely sensitive to fine spectral changes contained in speech-relevant glides provides cortical evidence for the ecological importance of FM sweeps in speech processing.

摘要

快速编码调频(FM)扫描中包含的频率轮廓方向的能力对于语音处理、音乐欣赏和同种交流至关重要。心理物理学证据表明,人类听众在处理频率滑动的快速变化时存在一个共同的时间窗口阈值。目前尚无神经学证据表明在频率滑动的快速转变编码背后存在皮质时间窗口阈值。本脑磁图研究使用皮质失配负波活动(MMNm)来研究检测调频扫描中不同幅度方向变化所需的最短时间窗口。采用了偏差奇偶数范式,其中向上或向下的方向频率扫描作为标准,相同类型但方向相反的扫描作为偏差刺激。刺激由单向线性频率扫描复合体组成,其在10、20、40、80、160和320毫秒的持续时间内扫过与语音相关的频带(相应速率为50、25、12.5、6.2、3.1、1.5倍频程/秒)。数据显示在所有扫描持续时间内都有显著的磁失配场反应,扫描速率较慢时会引发更大的MMNm反应。对于上升而非下降的频率扫描轮廓,MMNm反应在时间上有更大的增强。观察到MMNm反应模式的半球不对称性与频率扫描的方向性相对应。与心理物理学研究结果相反,我们报告了一个短至10毫秒的时间窗口足以引发对与语音相关频率轮廓方向变化的强烈MMNm反应。结果表明,听觉皮层需要极其短暂的时间窗口来隐含地区分语言相关音高轮廓频率的动态变化。大脑对与语音相关的滑动中包含的精细频谱变化极其敏感,这为FM扫描在语音处理中的生态重要性提供了皮质证据。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验